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Integration of electronics and photonics in active material by femtosecond laser for functional microdevice fabrication

机译:用Femtosecond激光器在功能性微型制造中的活性材料中的电子和光子集成

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Recently, hybrid integration of multifunctional micro-components for creating complex, intelligent micro/nano systems has attracted significant attention. These micro/nano systems have important applications in a variety of areas, such as healthcare, environment, communication, national security, and so on. Until now, fabrication of micro/nano systems incorporated with different functions is still a challenging issue, which generally requires fabrication of microcomponents beforehand followed by assembly and packaging procedures. Thus, the fabrication process is complex and costly. In recent years, the rapid development of femtosecond laser microfabrication technology has enabled direct fabrication and integration of multifunctional components, such as microfluidics, microoptics, micromechanics, microelectronics, etc., into a substrate. Particularly, in this talk, we show the use of femtosecond laser microfabrication for integrating microelectronics and microphotonics. Both microelectrodes and optical waveguides can be directly embedded in active materials after a femtosecond laser direct writing followed by electroless chemical plating. As examples, electric-optic (EO) modulators were fabricated in lithium niobate (LiNbO_3) crystal and their functions were demonstrated.
机译:最近,用于创造复杂的多功能微型组件的混合集成,智能微型/纳米系统引起了重大关注。这些Micro / Nano Systems在各种领域具有重要应用,例如医疗保健,环境,沟通,国家安全等。到目前为止,加入不同功能的微/纳米系统的制造仍然是一个具有挑战性的问题,这通常需要预先制造微型组件,然后进行组装和包装程序。因此,制造过程复杂且昂贵。近年来,飞秒激光微制造技术的快速发展使多功能组分的直接制造和集成,例如微流体,微内光,微机械,微电子等进入基材。特别是,在这次谈话中,我们展示了使用飞秒激光微制造来集成微电子和微光学。在飞秒激光直接写入之后,微电极和光学波导可以直接嵌入活性材料中,然后是化学镀层。作为实施例,在铌酸锂(LINBO_3)晶体中制造了电光(EO)调节剂,并证明了它们的功能。

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